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Your search keyword '"Protein Annotation"' showing total 512 results

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512 results on '"Protein Annotation"'

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1. High-throughput protein characterization by complementation using DNA barcoded fragment libraries

2. Proteome-scale structural prediction of the giant Marseillevirus reveals conserved folds and putative homologs of the hypothetical proteins.

3. High-throughput protein characterization by complementation using DNA barcoded fragment libraries

4. Partial order relation–based gene ontology embedding improves protein function prediction.

6. Three Rounds of Read Correction Significantly Improve Eukaryotic Protein Detection in ONT Reads.

7. Different Recognition of Protein Features Depending on Deep Learning Models: A Case Study of Aromatic Decarboxylase UbiD.

8. An informatic workflow for the enhanced annotation of excretory/secretory proteins of Haemonchus contortus

9. Unsupervised Deep Learning Can Identify Protein Functional Groups from Unaligned Sequences.

10. Three Rounds of Read Correction Significantly Improve Eukaryotic Protein Detection in ONT Reads

11. Survey of Protein Sequence Embedding Models.

12. LambdaPP: Fast and accessible protein‐specific phenotype predictions.

13. Profiling a Community-Specific Function Landscape for Bacterial Peptides Through Protein-Level Meta-Assembly and Machine Learning.

14. Profiling a Community-Specific Function Landscape for Bacterial Peptides Through Protein-Level Meta-Assembly and Machine Learning

15. Different Recognition of Protein Features Depending on Deep Learning Models: A Case Study of Aromatic Decarboxylase UbiD

16. MicrobeAnnotator: a user-friendly, comprehensive functional annotation pipeline for microbial genomes

17. Discovery and mining of enzymes from the human gut microbiome.

18. DeePVP: Identification and classification of phage virion proteins using deep learning.

19. Protein Annotation of Breast-cancer-related Proteins with Machine-learning Tools

20. Annotation Vocabulary (Might Be) All You Need.

21. Genome sequences and in silico effector mining of Corynespora cassiicola CC_29 and Corynespora olivacea CBS 114450.

22. Automatic Prediction and Annotation: There Are Strong Biases for Multigenic Families.

24. PASS: Protein Annotation Surveillance Site for Protein Annotation Using Homologous Clusters, NLP, and Sequence Similarity Networks

25. mPies: a novel metaproteomics tool for the creation of relevant protein databases and automatized protein annotation

26. MicrobeAnnotator: a user-friendly, comprehensive functional annotation pipeline for microbial genomes.

27. Automated Confirmation of Protein Annotation Using NLP and the UniProtKB Database.

28. Protein Annotation of Breast-cancer-related Proteins with Machine-learning Tools.

29. Functional Annotation and Analysis of Dual Oxidase 1 (DUOX1): a Potential Anti-pyocyanin Immune Component.

32. mPies: a novel metaproteomics tool for the creation of relevant protein databases and automatized protein annotation.

33. Automated Confirmation of Protein Annotation Using NLP and the UniProtKB Database

34. Analyses of Compact Trichinella Kinomes Reveal a MOS-Like Protein Kinase with a Unique N-Terminal Domain

36. Survey of Protein Sequence Embedding Models

37. GOMAP Process Flowchart

38. Cysmotif Searcher Pipeline for Antimicrobial Peptide Identification in Plant Transcriptomes.

39. Inferring the Functions of Proteins from the Interrelationships between Functional Categories.

41. EvoProDom: evolutionary modeling of protein families by assessing translocations of protein domains

42. Protein Annotation by Secondary Structure Based Alignments (PASSTA)

43. Columba: Multidimensional Data Integration of Protein Annotations

45. A bioinformatics pipeline to search functional motifs within whole-proteome data: a case study of poxviruses.

46. MoonProt 3.0: an update of the moonlighting proteins database

47. IDRMutPred: predicting disease-associated germline nonsynonymous single nucleotide variants (nsSNVs) in intrinsically disordered regions

48. Protein Annotation of Breast-cancer-related Proteins with Machine-learning Tools

49. De Novo Transcriptomics Analysis of the Floral Scent of Chinese Narcissus

50. 'PANNZER – a practical tool for protein function prediction'

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